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药物靶基因功能突变的计算建模与生物信息学分析 于……(原文此处不完整)

Computational modeling and bioinformatic analyses of functional mutations in drug target genes in .

作者信息

Singh Pooja, Jamal Salma, Ahmed Faraz, Saqib Najumu, Mehra Seema, Ali Waseem, Roy Deodutta, Ehtesham Nasreen Z, Hasnain Seyed E

机构信息

Jamia Hamdard Institute of Molecular Medicine, Jamia Hamdard, New Delhi 110062, India.

Department of Environmental and Occupational Health, Florida International University, Miami 33029, USA.

出版信息

Comput Struct Biotechnol J. 2021 Apr 19;19:2423-2446. doi: 10.1016/j.csbj.2021.04.034. eCollection 2021.

Abstract

Tuberculosis (TB) continues to be the leading cause of deaths due to its persistent drug resistance and the consequent ineffectiveness of anti-TB treatment. Recent years witnessed huge amount of sequencing data, revealing mutations responsible for drug resistance. However, the lack of an up-to-date repository remains a barrier towards utilization of these data and identifying major mutations-associated with resistance. Amongst all mutations, non-synonymous mutations alter the amino acid sequence of a protein and have a much greater effect on pathogenicity. Hence, this type of gene mutation is of prime interest of the present study. The purpose of this study is to develop an updated database comprising almost all reported substitutions within the () drug target genes , , , , and Various bioinformatics prediction tools were used to assess the structural and biophysical impacts of the resistance causing non-synonymous single nucleotide polymorphisms (nsSNPs) at the molecular level. This was followed by evaluating the impact of these mutations on binding affinity of the drugs to target proteins. We have developed a comprehensive online resource named MycoTRAP-DB ( Resistance Associated Polymorphisms Database) that connects mutations in genes with their structural, functional and pathogenic implications on protein. This database is accessible at http://139.59.12.92. This integrated platform would enable comprehensive analysis and prioritization of SNPs for the development of improved diagnostics and antimycobacterial medications. Moreover, our study puts forward secondary mutations that can be important for prognostic assessments of drug-resistance mechanism and actionable anti-TB drugs.

摘要

结核病(TB)仍然是导致死亡的主要原因,因为其持续存在耐药性,导致抗结核治疗无效。近年来出现了大量测序数据,揭示了导致耐药性的突变。然而,缺乏最新的数据库仍然是利用这些数据以及识别与耐药性相关的主要突变的障碍。在所有突变中,非同义突变会改变蛋白质的氨基酸序列,对致病性的影响更大。因此,这类基因突变是本研究的主要关注点。本研究的目的是开发一个更新的数据库,该数据库包含几乎所有已报道的在()药物靶基因、、、、和中的替换。使用了各种生物信息学预测工具在分子水平评估导致耐药性的非同义单核苷酸多态性(nsSNPs)的结构和生物物理影响。随后评估这些突变对药物与靶蛋白结合亲和力的影响。我们开发了一个名为MycoTRAP-DB(耐药相关多态性数据库)的综合在线资源,该资源将基因中的突变与其对蛋白质的结构、功能和致病性影响联系起来。该数据库可在http://139.59.12.92访问。这个集成平台将能够对单核苷酸多态性进行全面分析和排序,以开发改进的诊断方法和抗分枝杆菌药物。此外,我们的研究提出了对耐药机制的预后评估和可操作的抗结核药物可能很重要的二次突变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e715/8113780/52312ff9201c/ga1.jpg

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